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1  period (about 370 million years ago), using backscattered electron and cathodoluminescence imaging a
2   Scanning electron microscopy with combined backscattered electron and X-ray imaging (SEM-BEX) repre
3                          In conjunction with backscattered electron (BSE) and energy-dispersive spect
4 entially mill away the sample surface, and a backscattered electron (BSE) detector, used to image the
5 d transmission electron microscopy (TEM) and backscattered electron (BSE) microscopy to obtain struct
6    Furthermore, the carbon film has very low backscattered electron (BSE) yield compared to that from
7 g electron microscopy approach that detected backscattered electrons (BSEs) and X-rays (from ionizati
8                                              Backscattered electron detection provided excellent dete
9                                 By recording backscattered electrons, diffraction patterns from singl
10                                              Backscattered electron images and Raman mapping were use
11 e fraction were calculated from quantitative backscattered electron images of human mandibles aged 16
12 metry and mineralization density analysis of backscattered electron imaging revealed widened and diso
13 A synchrotron with qBEI images (quantitative backscattered electron imaging) allowed assignment of Gd
14 on SFN treatment as measured by quantitative backscattered electron imaging.
15 nsistent with Fourier transform infrared and backscattered electron microscopy studies that revealed
16 d for mineralization density by quantitative backscattered electron microscopy, and sulphated glycosa
17 ring analysis with large-area Raman imaging, backscattered electron microscopy, histopathology, and m
18 ctron microscopy (SEM), and the quantitative backscattered electron mode of SEM.
19                             The detection of backscattered electrons suggests small spots on the part